| Literature DB >> 27118314 |
Robert Marmulla1, Edinson Puentes Cala1, Stephanie Markert2, Thomas Schweder2, Jens Harder3.
Abstract
BACKGROUND: The betaproteobacterium Thauera linaloolentis 47Lol(T) was isolated on the tertiary monoterpene alcohol (R,S)-linalool as sole carbon and energy source under denitrifying conditions. Growth experiments indicated the formation of geraniol and geranial. Thus, a 3,1-hydroxyl-Δ(1)-Δ(2)-mutase (linalool isomerase) activity may initiate the degradation, followed by enzymes of the acyclic terpene utilization (Atu) and leucine/isovalerate utilization (Liu) pathways that were extensively studied in Pseudomonas spp. growing on citronellol or geraniol.Entities:
Keywords: Acyclic terpene utilization; Geraniol; Linalool; Monoterpene
Mesh:
Substances:
Year: 2016 PMID: 27118314 PMCID: PMC4847356 DOI: 10.1186/s12866-016-0693-8
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Fig. 1Proposed pathway for the linalool metabolism in T. linaloolentis 47LolT, based on the acyclic terpene utilization pathway (Atu) in Pseudomonas spp. (adapted from [9]). Linalool isomerase (Lis), geraniol dehydrogenase (GeoA), geranial dehydrogenase (GeoB)
Genes involved in the acyclic terpene utilization (Atu) and leucin isovalerate utilization (Liu) pathway
| Enzyme | NCBI accession | Length [AA] | AA similarity [%] | E-value | Protein identification by MS |
|---|---|---|---|---|---|
| Linalool isomerasea | ENO87364 | 644 | 20 | 3E-10 | Yes |
| Geraniol dehydrogenasea (GeoA) | ENO84122 | 366 | 46 | 7E-96 | Yes |
| Geranial dehydrogenasea (GeoB) | ENO84123 | 456 | 31 | 7E-39 | No |
| Acyl-CoA synthaseb (AtuH) | ENO87356 | 545 | 24 | 1E-15 | No |
| Geranyl-CoA carboxylaseb beta-subunit (AtuC) | ENO87361 | 545 | 54 | 0 | Yes |
| Geranyl-CoA carboxylaseb alpha subunit (AtuF) | ENO87362 | 705 | 52 | 0 | Yes |
| Isohexenyl-glutaconyl-CoA hydrataseb (AtuE) | ENO87363 | 258 | 30 | 7E-27 | No |
| 3-Hydroxy-3-isohexenylglutaryl-CoA:acetate lyaseb (AtuA) | ENO84124 | 615 | 52 | 0 | Yes |
| 3-Methylcrotonyl-CoA carboxylaseb beta-subunit (LiuB) | ENO88226 | 535 | 72 | 0 | Yes |
| 3-Methylcrotonyl-CoA carboxylaseb alpha subunit (LiuD) | ENO88223 | 668 | 53 | 0 | Yes |
| 3-Methylglutaconyl-CoA hydrataseb (LiuC) | ENO88225 | 265 | 44 | 3E-73 | No |
| Hydroxymethylglutaryl-CoA lyaseb (LiuE) | ENO88221 | 312 | 63 | 2E-129 | No |
Genes were identified by amino acids alignments using C. defragrans 65Phena and P. aeruginosa PAO1b sequences as references. Proteins identified in the proteomic approach were analyzed by SDS-PAGE coupled to MALDI-ToF MS (Additional file 2: Figure S1)
Fig. 2Growth of T. linaloolentis 47LolT on 2 mM (R,S)-linalool under denitrifying conditions. a Optical density at 600 nm as a measure for growth and linalool concentration in mM, b Optical density at 600 nm as a measure for growth and geraniol, geranial and geranic acid concentration in μM. Experiment was performed in duplicates. Initial increase in linalool concentration is due to time-dependent dissolution of linalool in medium. Linalool decreased accompanied with an increase in optical density. Geraniol and geranial accumulated only transiently, while geranic acid accumulated up to 200 μM
Fig. 3Gene arrangement of acyclic terpene utilization (atu) and leucine isovalerate utilization (liu) pathway genes in the draft genome of T. linaloolentis 47LolT. Annotation and NCBI accession numbers are indicated. Gaps size between atuH and atuC is 3488 bp and gap size between lis and geoA is 7617 bp. The atu genes are located on a 388748 bp large contig, while the liu genes are located on a 205711 bp contig